Fully biomass-derived polyurethane based on dynamic imine with self-healing, rapid degradability, and editable shape memory capabilities

聚氨酯 白桦素 材料科学 亚胺 香兰素 韧性 化学工程 极限抗拉强度 热分解 复合材料 化学 有机化学 催化作用 工程类
作者
Xiaobo Xu,Xiaozhen Ma,Minghui Cui,Honglong Zhao,Nathan E. Stott,Jin Zhu,Ning Yan,Jing Chen
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:479: 147823-147823 被引量:30
标识
DOI:10.1016/j.cej.2023.147823
摘要

In this study, a novel bio-based diol containing imine dynamic bonds (Vanp2) were synthesized using vanillin and bio-based 1,5-pentanediamine. Vanp2 was then introduced into the cross-linking network of betulin-based polyurethanes to obtain betulin-based polyurethanes containing covalent adaptive networks (CANs). Imine dynamic bonds within CAN endowed these betulin-based polyurethanes with self-healing, re-processability, degradability, and editable shape memory functionalities. Meanwhile, the mechanical and thermal properties of these fully bio-based polyurethane materials were characterized. The maximum tensile strength reached 9.5 MPa, while the maximum strain at break was 248 % and the maximum toughness was 13.2 MJ/m3. Thermal decomposition temperature was greater than 300 °C. Since the imine structure could be dissociated under acidic conditions, these polyurethanes could be rapidly degraded in a mixed acid solution at 50 °C in 4 h. This study demonstrated a strategy for synthesizing betulin-based polyurethane elastomers containing CAN using only bio-based feedstock.
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